ID 原文 译文
15575 可见光区范围的吸收率,使ZnO纳米棒的光电流从1.35 mA提高到3.6 mA。 Meanwhile, Al NPs enhances the absorptior rate of ZnO nanorods in the UV-visible region, and increases the photocurrent from 1. 35 mA to 3.6 mA.
15576 相比未修饰的ZnO纳米棒,Al纳米颗粒可有效提升ZnO纳米棒的光响应度、灵敏度和光暗电流比,同时缩短了响应恢复时间,有助于紫外探测器的实际应用。 Compared with the ZnO nanorods without Al NPs decoration, Al NPs significantly improves the responsivity , sensitivity , photo-to-dark current ratio and decreases the response recovery time of the ZnO nanorods, which make it favorable for the practical application for ultraviolet detectors.
15577 通过分析长周期光纤光栅(LPFG)透射波长与金属氧化物半导体材料电导率、折射率之间存在的关联性,针对性分析了温度对材料气敏性能的影响,综合讨论金属氧化物半导体材料应用于LPFG气敏传感的合理性。 In this work, the rationality of metal oxide semiconductor materials for LPFG gas sensing was investigated by discussing the relationship between the transmission wavelength of LPFG and the conductivity and refractive index of materials. The effect of ambient temperature was also analyzed.
15578 建立了金属氧化物半导体材料应用于LPFG气敏传感时各相关量之间对应的逻辑关系,并利用光纤光栅传感特性辅助分析系统做出理论计算进行验证。 By theory analysis, the relations among the correlation variables were established and verified by using the fiber grating sensing characteristics assisted analysis system. The results are in good agreement with previous discussion.
15579 计算结果与理论分析呈现出良好的一致性,当还原性气体吸附导致外包层n型金属氧化物半导体材料折射率增大时,LPFG透射波长逐渐向短波方向移动,表现出了相应的气体敏感特性。 When the refractive index of n-type metal oxide semiconductor materia increases due to reducing gas adsorption, the transmission wavelength of LPFG gradually shifts to the shorter wave length. showing the corresponding gas sensitive characteristics.
15580 增材制造(3D打印)技术和液态金属结合可以快速制作出结构灵活、功能新颖、适用于不同场景的天线形式。 The combination of additive manufacturing ( 3D printing) and liquid metal filling techniques enables the rapid prototyping of antenna structures with flexible topologies and novel functionalities for various application scenarios.
15581 本文设计了一款用于可穿戴手环的液态金属3D打印天线,该天线工作在2.4,3.3和5.5 GHz三个频段。 A 3D printed liquid metal antenna for wrist-worn application was proposed in this article. This antenna could work at three bands-2.4 GHz,3.3 GHz and 5.5 GHz.
15582 通过3D打印技术加工出共形于人体手腕的介质基板和微通带空腔,然后用液态金属快速填充微通带空腔形成天线的辐射导体。 Such antenna was manufactured by 3D printing the substrate with hollow channels conformal to the human wrist, and then the channels were filled with liquid metal as the antenna radiating conductor.
15583 利用全波仿真软件对天线结构和参数进行优化,验证了3D打印基板厚度对天线辐射效率的影响以及天线辐射模式与人体组织间的相互影响。 The effect of the thickness of the 3D printed wristband on the antenna radiation efficiency was analyzed through full wave EM simulations. The mutual interactions between antenna radiation and human tissues were also investigated.
15584 该设计概念性地验证了基于3D打印技术和液态金属的天线在可穿戴及共形电子元件领域的应用,天线结构简单且易于加工,可根据实际应用场景制作出结构和性能更加灵活的天线。 This fabrication method conceptually verifies that 3D printing and liquid metal filling techniques are suitable for applications of wearable and conformal electronics due to its rapid fabrication process. More flexible antenna structures with novel functionalities for practical scenarios can be manufactured using such combined techniques, particularly in the area of wearable and conformal electronics.